首页> 外文会议>Society of Petrophysicists and Well Log Analysts, Inc.;SPWLA Annual Logging Symposium >APPLICATION OF ELECTROMAGNETIC TECHNOLOGY FOR CORROSION MONITORING IN WELLS WITH DUAL COMPLETIONS
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APPLICATION OF ELECTROMAGNETIC TECHNOLOGY FOR CORROSION MONITORING IN WELLS WITH DUAL COMPLETIONS

机译:电磁技术在井下腐蚀监测中的应用

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Monitoring the integrity of well casings is vital for oil and gas well management, which can help maintain production levels, reduce maintenance cost, and protect surrounding environment. An electromagnetic pipe inspection tool with multiple transmitter and receiver arrays operating at multiples frequencies was designed to accurately estimate the individual wall thicknesses of up to five nested pipes. Data acquired from this tool was originally processed based on an axis-symmetric forward model to invert for wall thicknesses of individual pipes. Such processing workflow is only applicable to a typical well completion with a single production tubing inside multiple nested casings. However, in a scenario with dual completions, two production tubings are generally installed to produce from more than one production zone. The presence of more than one tubing breaks the axial-symmetry of the completion structure. In this paper, we propose a new workflow to process data from electromagnetic tools for the application of integrity inspection of non-nested tubulars. A yard test with full-scale mockup demonstrates the performance of the tool.The proposed workflow, including data calibration and model-based inversion, can estimate the magnetic permeability and electrical conductivity of the pipes, along with wall thicknesses, and eccentricity of the tubings with respect to the innermost casing. An in-situ calibration method is applied to mitigate interference from one tubing when the tool is logged inside the other tubing. Model-based inversion enables an accurate estimation of the thickness of outer casings along with the eccentricity of the tubings. In addition, a two-dimensional inversion algorithm is shown to provide more accurate assessment of small corrosion spots.In the yard test, a 150 ft-long mockup includes two strings of 2⅞-in. tubings and two outer casings with four machined defects with different sizes. Logging inside each of the tubing strings was performed, and the two logs are processed to obtain the thicknesses of the tubings, outer casings as well as the eccentricity of the tubings.The inversion results reveal that the tool can accurately detect various kinds of defects on outer casings from one single log, even in the presence of a second tubing. The measurements show that the interference from the adjacent tubing is minimal and its impact on the inversion result can be well mitigated by employing the in-situ calibration. The consistent results from two logs run in each tubing string suggests that it is sufficient to run the tool in only one of the tubing strings, if the goal is solely to inspect corrosion in the outer casings.The techniques presented enable pipe integrity monitoring with a single run inside any one of the tubings and without pulling out any pipes. The data processing workflow based on two-dimensional inversion yields more accurate estimation, which provides critical information to significantly improve the efficiency of well intervention operations, therefore minimizing non-productive time and cost.
机译:监测井套装的完整性对于石油和天然气井管理至关重要,这有助于保持生产水平,降低维护成本,保护周围环境。具有多个发射器和接收器阵列的电磁管检查工具设计为在倍频率下操作,以准确地估计多达五个嵌套管道的各个壁厚。从该工具获取的数据最初基于轴对称的前向模型来处理,以反转各个管道的壁厚。这种加工工作流仅适用于典型的井完成,在多个嵌套壳体内部具有单个生产管。然而,在具有双重完成的场景中,通常安装两个生产管以产生从一个以上的生产区。存在多个管的存在破坏了完成结构的轴向对称性。在本文中,我们提出了一种新的工作流程来处理来自电磁工具的数据,以应用非套管管的完整性检查。具有满量程模型的码测试演示了该工具的性能。所提出的工作流程包括数据校准和基于模型的反转,可以估计管道的磁导率和导电性以及与最内层的壁厚和管子的偏心率。应用原位校准方法以在另一个管道内记录工具时减轻一个管道的干扰。基于模型的反转使得能够精确地估计外壳的厚度以及管的偏心率。另外,示出了二维反演算法,以提供对小腐蚀点的更准确的评估。在院子里测试中,150英尺长的样机包括两个2英寸的两个字符串。管材和两个外壳,具有四种加工缺陷,不同尺寸。执行在每个管道中的测井,并处理两个原木以获得管道的厚度,外壳以及管的偏心率。反演结果表明,即使在第二管的存在下,该工具也可以从一个单个原木准确地检测外壳上的各种缺陷。测量结果表明,通过采用原位校准,可以通过采用原位校准来利用邻近管道的干扰最小,并且它可以通过原位校准来良好地减轻对转换结果的影响。在每个管道中运行的两个原木的一致结果表明,如果目标仅在外壳中检查腐蚀,则足以仅在管圈中运行该工具。该技术呈现了管道完整性监控,在任何一个管内的单个运行,并且不拔出任何管道。基于二维反演的数据处理工作流程产生更准确的估计,这提供了关键信息,以显着提高井干预操作的效率,从而最小化非生产时间和成本。

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